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Mitochondrial bioenergetics boost macrophage activation, promoting liver regeneration in metabolically compromised animals.
Goikoetxea-Usandizaga, Naroa; Serrano-Maciá, Marina; Delgado, Teresa C; Simón, Jorge; Fernández Ramos, David; Barriales, Diego; Cornide, Maria E; Jiménez, Mónica; Pérez-Redondo, Marina; Lachiondo-Ortega, Sofia; Rodríguez-Agudo, Rubén; Bizkarguenaga, Maider; Zalamea, Juan Diego; Pasco, Samuel T; Caballero-Díaz, Daniel; Alfano, Benedetta; Bravo, Miren; González-Recio, Irene; Mercado-Gómez, Maria; Gil-Pitarch, Clàudia; Mabe, Jon; Gracia-Sancho, Jordi; Abecia, Leticia; Lorenzo, Óscar; Martín-Sanz, Paloma; Abrescia, Nicola G A; Sabio, Guadalupe; Rincón, Mercedes; Anguita, Juan; Miñambres, Eduardo; Martín, César; Berenguer, Marina; Fabregat, Isabel; Casado, Marta; Peralta, Carmen; Varela-Rey, Marta; Martínez-Chantar, María Luz.
Afiliación
  • Goikoetxea-Usandizaga N; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Serrano-Maciá M; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Delgado TC; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Simón J; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Fernández Ramos D; Precision Medicine and Liver Metabolism Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Barriales D; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBERehd), Carlos III National Health Institute, Madrid, Spain.
  • Cornide ME; Inflammation and Macrophage Plasticity Laboratory, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Jiménez M; Liver, Digestive System and Metabolism Department, Liver Transplantation and Graft Viability Lab, Instituto de Investigaciones Biomédicas August Pi i Sunyer (IDIBAPS), Barcelona, Spain.
  • Pérez-Redondo M; Liver, Digestive System and Metabolism Department, Liver Transplantation and Graft Viability Lab, Instituto de Investigaciones Biomédicas August Pi i Sunyer (IDIBAPS), Barcelona, Spain.
  • Lachiondo-Ortega S; Transplant Coordination Unit, Puerta de Hierro University Hospital, Madrid, Spain.
  • Rodríguez-Agudo R; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Bizkarguenaga M; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Zalamea JD; Precision Medicine and Liver Metabolism Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Pasco ST; Structure and Cell Biology of Viruses Lab Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Caballero-Díaz D; Inflammation and Macrophage Plasticity Laboratory, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Alfano B; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBERehd), Carlos III National Health Institute, Madrid, Spain.
  • Bravo M; TGF-ß and Cancer Group, Oncobell Program, Bellvitge Biomedical Research Institute (IDIBELL), Gran Via de L'Hospitalet, Barcelona, Spain.
  • González-Recio I; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Mercado-Gómez M; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Gil-Pitarch C; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Mabe J; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Gracia-Sancho J; Liver Disease Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Abecia L; Electronics and Communications Unit, IK4-Tekniker, Eibar, Spain.
  • Lorenzo Ó; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBERehd), Carlos III National Health Institute, Madrid, Spain.
  • Martín-Sanz P; Liver Vascular Biology Research Group, IDIBAPS, Barcelona, Spain.
  • Abrescia NGA; Inflammation and Macrophage Plasticity Laboratory, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Sabio G; Immunology, Microbiology and Parasitology Department, Medicine and Nursing Faculty, University of the Basque Country, Leioa, Spain.
  • Rincón M; Laboratory of Diabetes and Vascular Pathology, IIS-Fundación Jiménez Díaz-Universidad Autónoma de Madrid, Spanish Biomedical Research Centre on Diabetes and Associated Metabolic Disorders (CIBERDEM) Network, Madrid, Spain.
  • Anguita J; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBERehd), Carlos III National Health Institute, Madrid, Spain.
  • Miñambres E; Cell Signalling and Metabolism Department, Instituto de Investigaciones Biomédicas "Alberto Sols," CSIC-UAM, Madrid, Spain.
  • Martín C; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBERehd), Carlos III National Health Institute, Madrid, Spain.
  • Berenguer M; Structure and Cell Biology of Viruses Lab Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Fabregat I; IKERBASQUE, Basque Foundation for Science, Bilbao, Spain.
  • Casado M; Centro Nacional de Investigaciones Cardiovasculares, Stress Kinases in Diabetes, Cancer and Biochemistry, Madrid, Spain.
  • Peralta C; Department of Medicine, Immunobiology Division, University of Vermont, Burlington, Vermont, USA.
  • Varela-Rey M; Inflammation and Macrophage Plasticity Laboratory, Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance, Derio, Spain.
  • Martínez-Chantar ML; IKERBASQUE, Basque Foundation for Science, Bilbao, Spain.
Hepatology ; 75(3): 550-566, 2022 03.
Article en En | MEDLINE | ID: mdl-34510498
BACKGROUND AND AIMS: Hepatic ischemia-reperfusion injury (IRI) is the leading cause of early posttransplantation organ failure as mitochondrial respiration and ATP production are affected. A shortage of donors has extended liver donor criteria, including aged or steatotic livers, which are more susceptible to IRI. Given the lack of an effective treatment and the extensive transplantation waitlist, we aimed at characterizing the effects of an accelerated mitochondrial activity by silencing methylation-controlled J protein (MCJ) in three preclinical models of IRI and liver regeneration, focusing on metabolically compromised animal models. APPROACH AND RESULTS: Wild-type (WT), MCJ knockout (KO), and Mcj silenced WT mice were subjected to 70% partial hepatectomy (Phx), prolonged IRI, and 70% Phx with IRI. Old and young mice with metabolic syndrome were also subjected to these procedures. Expression of MCJ, an endogenous negative regulator of mitochondrial respiration, increases in preclinical models of Phx with or without vascular occlusion and in donor livers. Mice lacking MCJ initiate liver regeneration 12 h faster than WT and show reduced ischemic injury and increased survival. MCJ knockdown enables a mitochondrial adaptation that restores the bioenergetic supply for enhanced regeneration and prevents cell death after IRI. Mechanistically, increased ATP secretion facilitates the early activation of Kupffer cells and production of TNF, IL-6, and heparin-binding EGF, accelerating the priming phase and the progression through G1 /S transition during liver regeneration. Therapeutic silencing of MCJ in 15-month-old mice and in mice fed a high-fat/high-fructose diet for 12 weeks improves mitochondrial respiration, reduces steatosis, and overcomes regenerative limitations. CONCLUSIONS: Boosting mitochondrial activity by silencing MCJ could pave the way for a protective approach after major liver resection or IRI, especially in metabolically compromised, IRI-susceptible organs.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Daño por Reperfusión / Chaperonas Moleculares / Proteínas Mitocondriales / Hígado Graso / Regeneración Hepática / Activación de Macrófagos / Mitocondrias Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: Hepatology Año: 2022 Tipo del documento: Article País de afiliación: España Pais de publicación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Daño por Reperfusión / Chaperonas Moleculares / Proteínas Mitocondriales / Hígado Graso / Regeneración Hepática / Activación de Macrófagos / Mitocondrias Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: Hepatology Año: 2022 Tipo del documento: Article País de afiliación: España Pais de publicación: Estados Unidos